Trial Watch: Targeting ATM-CHK2 and ATR-CHK1 pathways for anticancer therapy

Gwenola Manic1, Florine Obrist2, Antonella Sistigu1

  • 1Regina Elena National Cancer Institute ; Rome, Italy.

Insights

The ATM/CHK2 and ATR/CHK1 pathways are crucial for DNA damage response and cancer. Inhibitors show promise in sensitizing tumors to therapy, but clinical efficacy requires further demonstration.

Area of Science:

  • Molecular Biology
  • Oncology
  • Genetics

Background:

  • The DNA damage response (DDR) involves ATM/CHK2 and ATR/CHK1 signaling pathways, vital for genomic stability and tumor suppression.
  • Mutations in ATM/CHK2 are linked to cancer development, while ATR/CHK1 is often upregulated in tumors, potentially promoting growth.
  • Inactivating ATM/CHK2 and ATR/CHK1 pathways sensitizes cancer cells to radiotherapy and chemotherapy.

Purpose of the Study:

  • To review the roles of ATM-CHK2 and ATR-CHK1 pathways in cancer.
  • To summarize clinical trial results for ATR and CHK1 inhibitors in cancer treatment.

Main Methods:

  • Literature review of preclinical and clinical studies.
  • Analysis of the roles of ATM, ATR, CHK1, and CHK2 in cancer initiation and progression.
  • Summary of clinical trial data on ATR and CHK1 inhibitors.

Main Results:

  • ATM/CHK2 pathway alterations are frequent in tumors, predisposing to cancer.
  • ATR/CHK1 pathway is often upregulated in neoplasms, potentially promoting tumor growth.
  • Inhibitors of ATM, ATR, CHK1, and CHK2 show preclinical promise, sensitizing cancer cells to treatments.
  • ATR and CHK1 inhibitors selectively target tumor cells with replication stress or DDR deficiencies.

Conclusions:

  • While ATM/CHK2 and ATR/CHK1 pathways are critical in cancer, their inhibition's clinical utility is still under investigation.
  • ATR and CHK1 inhibitors have entered clinical trials, with ongoing evaluation of their safety and therapeutic profiles.

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